How do you figure out neutrons?

  • September 26, 2022

Core Concepts

In this tutorial, you will learn how to find and calculate the number of protons, neutrons, and electrons in an atom or element. In addition, you will learn about the different subatomic particles. If you enjoy this tutorial, be sure to check out our others!

Covered in other articles

  • The Structure of an Atom
  • What is an Element?
  • How to Read the Periodic Table
  • Element Articles
  • Discovering the electron
  • Electron Orbitals & Orbital Shapes

Vocabulary:

  • Protons: Positively charged subatomic particles located in the nucleus of an atom.
  • Neutrons: Neutrally charged subatomic particles located in the nucleus of an atom.
  • Electrons: Negatively charged subatomic particles located in orbitals surrounding the nucleus.
  • Atomic Mass: A weighted average of the number of neutrons and protons present for all isotopes.
  • Atomic Number: Number of protons present in an atom.
  • Element: A pure substance that cannot be broken down into a simpler substance by chemical means

How to find the Atomic Number

The atomic number of an element is simply the number of protons in its nucleus. The easiest way to find the atomic number, is to look on a periodic table, the atomic number is in the upper left corner, or is the largest number on the square.

Finding the Number of Protons

The number of protons in an atom is equal to the atomic number of the element. For example, let’s use oxygen. According to the periodic table, oxygen has the atomic number eight. The atomic number is located above the element’s symbol. Since oxygen has an atomic number of eight, there must be eight protons total. Moreover, the number of protons never changes for an element.

Finding the Number of Neutrons

The number of neutrons in an atom can be calculated by subtracting the atomic number from the atomic mass. Both of these numbers can be found on the periodic table. The atomic number is listed above the symbol of the element whereas the mass number is placed below. Let’s keep using oxygen as our example. Its atomic mass is 15.999 atomic mass units (amu) and its atomic number is 8. When we subtract 8 from 15.999, we will get 8. Also, it should be noted that the number of neutrons for an element may vary. Some elements have isotopes, which have different masses and therefore different numbers of neutrons.

Finding the Number of Electrons

The number of electrons in an atom is equal to the atomic number of an element, for neutrally charged species. This means the number of electrons and the number of protons in an element are equal. Therefore, the number of electrons in oxygen is 8. Moreover, since these two subatomic particles, electrons and protons, have opposite charges, they cancel out and keep the atom neutral.

Summary Table

Number of Protons = Atomic Number
Number of Neutrons = Atomic Mass- Atomic Number
Number of Electrons = Atomic Number

In this chemical reaction, known as the Briggs-Rauscher reaction, the number of protons and neutrons in each atom do not change. Electrons, however, are moving between atoms, causing different ions to form and causing the color changes. Please subscribe to our YouTube channel, lots more amazing videos are on the way!

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Further Reading

  • Lewis Dot Structures
  • Periodic Trends Made Easy

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Although all atoms of the same element contain the same number of protons, their number of neutrons can vary. Knowing how many neutrons are in a particular atom can help you determine if it's a regular atom of that element or an isotope, which will have either extra or fewer neutrons.[1] Determining the number of neutrons in an atom is fairly simple and doesn’t even require any experimentation. To calculate the number of neutrons in a regular atom or an isotope, all you need to do is follow these instructions with a periodic table in hand.

  1. 1

    Locate the element on the periodic table. For this example, we’ll look at osmium (Os), which is in the sixth row down.[2]

  2. 2

    Find the element’s atomic number. This tends to be the most visible number pertaining to a given element and usually sits above the element symbol, either in the middle of the box or in the upper left corner. (On the chart we're using, in fact, no other numbers are listed.) The atomic number is the number of protons in a single atom of that element.[3] Os is number 76, meaning one atom of osmium has 76 protons.

    • The proton number never changes in an element; it's basically what makes that element that element.[4]

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  3. 3

    Find the element’s atomic weight. This number is usually found beneath the atomic symbol. Note that the chart in this example is based solely on atomic number and doesn’t list the atomic weight. This won’t always usually be the case. Osmium has an atomic weight of 190.23.[5]

  4. 4

    Round off the atomic weight to the nearest whole number to find the atomic mass.[6] In our example, 190.23 would be rounded to 190, resulting in an atomic mass of 190 for osmium.

    • The atomic weight is an average of the isotopes of the element, so that's why it's not usually a whole number.[7]

  5. 5

    Subtract the atomic number from the atomic mass. Since the vast majority of an atom’s mass is made up of its protons and neutrons, subtracting the number of protons (i.e. the atomic number) from the atomic mass will give you the calculated number of neutrons in the atom. The numbers after the decimal point represent the usually very small mass of the electrons in the atom. In our example, this is: 190 (atomic weight) – 76 (number of protons) = 114 (number of neutrons).[8]

  6. 6

    Remember the formula. To find the number of neutrons in the future, simply use this formula:[9]

    • N = M – n
      • N = number of Neutrons
      • M = atomic Mass
      • n = atomic number

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  1. 1

    Locate the element on the periodic table. As an example, we’ll look at the carbon-14 isotope. Since the non-isotopic form of carbon-14 is simply carbon (C), find carbon on the periodic table (in the second row down).[10]

  2. 2

    Find the element’s atomic number. This tends to be the most visible number pertaining to a given element and usually sits above the element symbol. (On our example chart, in fact, no other numbers are listed.) The atomic number is the number of protons in a single atom of that element.[11] C is number 6, meaning one atom of carbon has 6 protons.

  3. 3

    Find the atomic mass. This is incredibly easy with isotopes, as they are named according to their atomic mass. Carbon-14, for example, has an atomic mass of 14. Once you find the atomic mass of the isotope, the process is the same as it is for finding the number of neutrons in a regular atom.[12]

  4. 4

    Subtract the atomic number from the atomic mass. Since the vast majority of an atom’s mass is found its protons and neutrons, subtracting the number of protons (i.e. the atomic number) from the atomic mass will give you the calculated number of neutrons in the atom. In our example, this is: 14 (atomic mass) – 6 (number of protons) = 8 (number of neutrons).

  5. 5

    Remember the formula. To find the number of neutrons in the future, simply use this formula:[13]

    • N = M – n
      • N = number of Neutrons
      • M = atomic Mass
      • n = atomic number

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  • Question

    How do you find the number of electrons, neutrons and protons?

    Bess Ruff is a Geography PhD student at Florida State University. She received her MA in Environmental Science and Management from the University of California, Santa Barbara in 2016. She has conducted survey work for marine spatial planning projects in the Caribbean and provided research support as a graduate fellow for the Sustainable Fisheries Group.

    Environmental Scientist

    Expert Answer

    Support wikiHow by unlocking this expert answer.

    Fortunately, there's a WikiHow article that can help you! It's called Find the Number of Protons, Neutrons, and Electrons. While the answer section here doesn't allow links, you can search for it in the search box at the top of the page using this title.

  • Question

    How many neutrons are in oxygen?

    Atomic mass minus the atomic number. Atomic mass of Oxygen is 16, and the atomic number is 8. 16 - 8 = 8.

  • Question

    Where can I locate the atomic mass in a modern periodic table?

    The modern periodic table has the atomic number on the top of each element's symbol and the atomic mass right below the symbol.

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  • Protons and neutrons make up almost all of the weight of the elements, whereas electrons and miscellaneous particles represent negligible mass (approaching zero mass). Since one proton has approximately the same weight as one neutron, and the atomic number represents the number of protons, we can simply subtract the number of protons from the total mass.[14]

  • If you’re ever unsure which number is which in a periodic table, just remember that the table is usually designed around the atomic number (i.e. number of protons), which starts at 1 (hydrogen) and ascends one unit at a time from left to right, ending at 118 (oganesson). This is because the number of protons in an atom determines what that atom is, making it the easiest elemental trait to organize by. (Ex. an atom with 2 protons is always helium, just as an atom with 79 protons is always gold.)

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Article SummaryX

To find the number of neutrons in an atom, you just need a periodic table that lists the atomic number as well as the atomic weight of each element. First, locate the elemental symbol for your atom on the periodic table. Then, find the atomic number for the element. It’s usually located somewhere above the element symbol. This number represents the number of protons in the atom. For instance, the atomic number of niobium (Nb) is 41, meaning that a niobium atom has 41 protons. Next, find the atomic weight of the element, which is usually underneath the element symbol. Round up the atomic weight to the nearest whole number. Niobium has an atomic weight of 92.906, so you would round it up to 93. Finally, subtract the number of protons from the rounded up atomic weight to find the number of neutrons in the atom. In the case of niobium, 93 minus 41 is 52, which means that a niobium atom has 52 neutrons. To find out how to calculate the number of neutrons in an isotope, read on!

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